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Hierarchical stack filtering: a bitplane-based algorithm for massively parallel processors

机译:分层堆栈过滤:基于位平面的大规模并行处理器算法

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摘要

With the development of novel parallel architectures for image processing, the implementation of well-known image operators needs to be reformulated to take advantage of the so-called massive parallelism. In this work, we propose a general algorithm that implements a large class of nonlinear filters, called stack filters, with a 2D-array processor. The proposed method consists of decomposing an image into bitplanes with the bitwise decomposition and then processes every bitplane hierarchically. The filtered image is reconstructed by simply stacking the filtered bitplanes according to their order of significance. Owing to its hierarchical structure, our algorithm allows us to trade-off between image quality and processing time, and to significantly reduce the computation time of low-entropy images. Also, experimental tests show that the processing time of our method is substantially lower than that of classical methods when using large structuring elements. All these features are of interest to a variety of real-time applications based on morphological operations such as video segmentation and video enhancement.
机译:随着用于图像处理的新型并行体系结构的发展,需要重新构造众所周知的图像运算符的实现,以利用所谓的大规模并行性。在这项工作中,我们提出了一种通用算法,该算法使用2D阵列处理器实现一大类非线性滤波器,称为堆栈滤波器。所提出的方法包括通过按位分解将图像分解为位平面,然后分层处理每个位平面。通过根据其重要性顺序简单地堆叠滤波后的位平面,即可重建滤波后的图像。由于其分层结构,我们的算法使我们能够在图像质量和处理时间之间进行权衡,并显着减少低熵图像的计算时间。而且,实验测试表明,当使用大型结构元素时,我们的方法的处理时间大大低于传统方法的处理时间。所有这些功能都对基于形态学操作(例如视频分割和视频增强)的各种实时应用感兴趣。

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